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Background: Suture selection in elective hand surgery closures has traditionally been non-absorbable sutures (NAS) rather than absorbable sutures (AS). The goal of this study was to evaluate absorbable versus non-absorbable closures of various primary elective hand procedures. Our group hypothesized that no differences in major short-term outcomes would exist.

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Suture material in pancreticojejunal anastomosis: a systematic review.

ANZ J Surg

January 2025

General Surgical Department, Liverpool Hospital, Corner of Elizabeth and Goulburn Street, Liverpool, New South Wales, 2170, Australia.

Background: Post-operative pancreatic fistula is a common and morbid complication of pancreaticojejunal anastomosis. While gastrointestinal anastomosis is typically performed using absorbable sutures, this issue has prompted experimentation with non-absorbable sutures. This study aims to assess the available literature to provide recommendations on suture choice in this anastomosis.

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Malachite green (MG) is used as a dye for materials such as wood, cotton, and nylon, and is used in aquaculture to prevent fungal and protozoan diseases. However, it is highly toxic, with carcinogenic, mutagenic, and teratogenic properties, resulting in bans worldwide. Despite this, MG is still frequently used in many countries due to its efficacy and economy.

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High-Performance Mechano-Sensitive Piezoelectric Nanogenerator from Post-Treated Nylon-11,11 Textiles for Energy Harvesting and Human Motion Monitoring.

ACS Appl Mater Interfaces

January 2025

School of Materials Science and Engineering, Henan Key Laboratory of Advanced Nylon Materials and Application, Zhengzhou University, Zhengzhou 450001, China.

Piezoelectric polymer textiles offer distinct advantages in the fabrication of wearable nanogenerators (NGs). One effective strategy to enhance the output capacity of NGs is to modulate the piezoelectric performance of the textiles. This paper focuses on further improving the piezoelectric properties of nylon-11,11 textiles through post-drawing and annealing treatments.

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With 3D printing technology, fiber-reinforced polymer composites can be printed with radical shapes and properties, resulting in varied mechanical performances. Their high strength, light weight, and corrosion resistance are already advantages that make them viable for physical civil infrastructure. It is important to understand these composites' behavior when used in concrete, as their association can impact debonding failures and overall structural performance.

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